WO2014019294A1 - Système et procédé de transport à fonctionnement en parallèle de véhicule de transport de grande envergure - Google Patents

Système et procédé de transport à fonctionnement en parallèle de véhicule de transport de grande envergure Download PDF

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Publication number
WO2014019294A1
WO2014019294A1 PCT/CN2012/083551 CN2012083551W WO2014019294A1 WO 2014019294 A1 WO2014019294 A1 WO 2014019294A1 CN 2012083551 W CN2012083551 W CN 2012083551W WO 2014019294 A1 WO2014019294 A1 WO 2014019294A1
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WO
WIPO (PCT)
Prior art keywords
semi
transport vehicle
trailer body
transport
trailer
Prior art date
Application number
PCT/CN2012/083551
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English (en)
Chinese (zh)
Inventor
王同建
Original Assignee
Wang Tongjian
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Wang Tongjian filed Critical Wang Tongjian
Publication of WO2014019294A1 publication Critical patent/WO2014019294A1/fr

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60PVEHICLES ADAPTED FOR LOAD TRANSPORTATION OR TO TRANSPORT, TO CARRY, OR TO COMPRISE SPECIAL LOADS OR OBJECTS
    • B60P3/00Vehicles adapted to transport, to carry or to comprise special loads or objects
    • B60P3/06Vehicles adapted to transport, to carry or to comprise special loads or objects for carrying vehicles
    • B60P3/07Vehicles adapted to transport, to carry or to comprise special loads or objects for carrying vehicles for carrying road vehicles

Definitions

  • the invention relates to the field of large transport vehicles, and in particular to a parallel transport system and method for large transport vehicles. Background technique
  • the object of the present invention is to overcome the deficiencies of the traditional transportation mode, and to provide a large transportation vehicle parallel transportation system and method, the invention can reduce the transportation cost of the transportation vehicle, and the vehicle transportation system and method are reasonable and reliable, and the operation is convenient. .
  • a method for transporting a large transport vehicle in parallel comprises the steps of: A) combining four large semi-trailers into one transport unit; B) said four of the transport units when the transport unit is transported by the transport unit Large semi-trailers are transported separately; C) When the one transport unit is transported in no-load, the two large semi-trailers in the transport unit are loaded onto the other two large semi-trailers by the roll-over system to form two A large semi-trailer transports two other large semi-trailers in parallel.
  • the step C) comprises: 1) dividing four empty transport vehicles of the one transport unit into a first transport vehicle for loading a semi-trailer body, and a second transporting vehicle for loading the tractor head
  • the transport vehicle, and the third and fourth semi-trailer bodies as the loaded objects, and dismantle the columns, the panels and the bunkers on the first, second and third semi-trailer bodies, and dismantle the fourth semi-trailer
  • the upper column and the barn of the body 2) separating the tractor head of the third transport vehicle from the semi-trailer body, and using the rollover system to flip the semi-trailer body of the third transport vehicle by 180 degrees, stacking it on the first a semi-trailer body of a transport vehicle; 3) separating the tractor head of the fourth transport vehicle from the semi-trailer body, and stacking the semi-trailer body of the fourth transport vehicle on the half of the inverted third transport vehicle
  • the trailer body is uplifted, and the removed column, the panel and the warehouse bar are placed
  • the wheel on the semi-trailer body of the third transport vehicle is located at an end adjacent to the rear end of the first transport vehicle; the wheel on the fourth transport vehicle semi-trailer body is located adjacent to the first transport One end of the tractor's towing head.
  • the rollover system comprises: a lifting device; a flipping platform (frame), which is mounted on the lifting device for turning over; a driving device, driving the turning platform (frame) to be turned over; and a clamping device disposed on the flipping platform (frame) For clamping the body of the semi-trailer to be turned over; a translating device, disposed below the flipping platform (frame), for moving the semi-trailer body to be turned over directly below the flipping platform (frame).
  • step 2) comprises the steps of: 2.1) driving the third transport vehicle to the translation device such that the semi-trailer body of the third transport vehicle is located on the translation device and the tractor head is located 2.2) separating the tractor head of the third transport vehicle from the semi-trailer body, the translation device is activated, and moving the semi-trailer body of the third transport vehicle to the flip platform (frame) Directly below; 2.3) flipping platform (frame) down, the clamping device is activated, after clamping the semi-trailer body of the third transport vehicle, the flipping platform (frame) is moved up; 2.4) the driving device is driven
  • the turning platform (frame) drives the semi-trailer body of the third transport vehicle to flip 180 degrees together; 2.5) lifting and rotating the inverted semi-trailer body in the first transport vehicle by using a row crane The semi-trailer body.
  • the driving device comprises: a driving motor mounted on the lifting device, the driving gear driven by the driving motor, the driven gear driven by the driving gear, the driven gear and the rotating platform (frame) fixed In one.
  • the translating device comprises: a translating plate on which two pairs of carrying gears are correspondingly arranged; a pair of racks for arranging pairs of carrying gears, extending from the outside of the flipping platform (frame) to the lower side thereof, through the gears along the rack Walking, moving the semi-trailer body on the translation plate below the flip platform (frame).
  • the pillars on the semi-trailer body of the first, second, third, and fourth transport vehicles are connected to the semi-trailer body by plugging; wherein the semi-trailer body of the fourth transporter
  • the upper column is divided into upper and lower parts, and the upper part column and the lower part column are connected by plugging; in the step 1), the upper part column and the bar column on the semi-trailer body of the fourth transport vehicle are removed.
  • a large transport vehicle parallel transport system comprising a transport unit composed of four large semi-trailers; a rollover system for use with the one transport unit;
  • the four large semi-trailers of the transportation unit are respectively carried by the cargo; wherein, when the one transportation unit is idling, the transportation unit is used by the rolling system
  • Two large semi-trailers were loaded onto two other large semi-trailers to form a parallel transport method for transporting two other large semi-trailers by two large semi-trailers.
  • the transport unit when the one transport unit is transported in no-load, the transport unit is divided into: a first transport vehicle for loading a semi-trailer body, a second transport vehicle for loading the tractor head, and as a load-carrying object
  • the semi-trailer body of the third and fourth transport vehicles wherein the semi-trailer body of the third transport vehicle is inverted on the semi-trailer body of the first transport vehicle; the semi-trailer body of the fourth transport vehicle is forwardly stacked Placed on the semi-trailer body of the inverted third transport vehicle; the pillars, vanes and bins on the semi-trailer body of the four transport vehicles are placed in the semi-trailer compartment of the fourth transport vehicle; the third transport vehicle and The bowing head of the fourth transport vehicle is fixed to the semi-trailer body of the second transport vehicle by a positioning device.
  • the wheel on the semi-trailer body of the third transport vehicle is located at one end of the first transport vehicle tail; the wheel on the fourth transport vehicle semi-trailer body is located at the tractor head of the first transport vehicle One end.
  • the pillars on the semi-trailer body of the first, second, third, and fourth transport vehicles are connected to the semi-trailer body by plugging; wherein, the semi-trailer body of the fourth transport vehicle
  • the column is divided into upper and lower parts, and the upper part column and the lower part column are connected by plugging; the semi-trailer body of the fourth transport vehicle is mounted with a lower part column and a box connected to the lower part column by plugging board.
  • the bottom of the pillar on the semi-trailer body of the first, second, and third transport vehicles is fixed with a plug, and the semi-trailer body is provided with a slot for inserting the plug; the fourth transporter
  • the bottoms of the upper and lower partial columns are fixed with inserts, and the tops of the semi-trailer body and the lower part of the fourth transport vehicle are provided with slots for inserting the plugs.
  • the bottoms of the pillars on the semi-trailer body of the first, second, and third transport vehicles are respectively fixed with connecting plates, and the connecting plates are respectively connected to the corresponding semi-trailer bodies by bolts;
  • the bottom plate of the upper part and the lower part of the column are fixed with a connecting plate, and the connecting plate on the lower part of the column is connected with the semi-trailer body of the fourth transport vehicle by bolts, and the connecting plate on the upper part of the column passes the bolt and the lower part Part of the column is connected.
  • the invention combines four empty transport vehicles into one transport unit, one of which transports two other vehicles
  • the semi-trailer body of the transport vehicle, one tractor head transporting the other two transport vehicles, and the other two transport vehicle's semi-trailer body has an inverted buckle, one upright, thereby reducing the stacking of the three semi-trailer bodies
  • the cost of transportation is inexpensive and greatly reduced.
  • the pillar of the transport vehicle of the present invention is connected to the semi-trailer body by means of plugging, and can be quickly disassembled;
  • the present invention clamps the semi-trailer body by the clamping device, then raises the semi-trailer body to an appropriate position by the lifting device, and finally drives the flip platform (frame) to reverse the semi-trailer body by the driving device.
  • the structure is simple, the operation is convenient and easy.
  • the invention adopts the rollover system to invert the half-trailer body that needs to be inverted by 180 degrees during loading and unloading, to ensure that the semi-trailer body does not deform and improve the efficiency of the parallel vehicle.
  • Figure 1 (a) is a schematic view showing the body of the first transport vehicle loaded with the third and fourth transport vehicles in the transport unit of the present invention
  • Figure 1 (b) is a schematic view showing the tractor head of the third transport vehicle loaded with the third and fourth transport vehicles in the transport unit of the present invention
  • Figure 1 (c) is a plan view of the third transport vehicle body 32 inverted in Figure 1 (a);
  • Figure 1 (d) is a plan view of the second transport vehicle body 22 of Figure 1 (b);
  • Figure 2 is a structural view showing the connection of the rear pillar of the first transport vehicle of the present invention to the vehicle body of the semi-trailer;
  • Figure 2a is a structural view of the rear compartment and the rear compartment of the first transport vehicle of the present invention;
  • Figure 2b is a left side view of Figure 2a;
  • Figure 2c is a structural view of the rear pillar of the first transport vehicle of the present invention.
  • Figure 2d is a left side view of Figure 2c
  • Figure 3 is a structural view of a side upright of a first transport vehicle of the present invention
  • Figure 3a is a cross-sectional view taken along line A-A of Figure 3;
  • Figure 3b is a structural view showing the connection of the side upright of the first transport vehicle of the present invention to the semi-trailer body;
  • Figure 4 is a connection structural view of the side upright of the fourth transport vehicle of the present invention;
  • Figure 5 is a front elevational view of the rollover system of the present invention.
  • Figure 6 is a plan view of the inversion system of the present invention.
  • Figure 7 is a side view of the vehicle body before entering the rollover system of the present invention.
  • Figure 8 is a side elevational view of the vehicle body directly below the rollover system of the present invention.
  • Figure 9 is a side view of the vehicle body being clamped to be turned over after entering the rollover system of the present invention.
  • Figure 10 is a side elevational view of the vehicle body flipped 90 degrees after entering the rollover system of the present invention
  • Figure 11 is a side elevational view of the vehicle body flipped 180 degrees after entering the rollover system of the present invention
  • Figure 12 is a front elevational view of Figure 6;
  • Figure 13 is a B-B view of the clamping device of Figure 12.
  • FIG. 1 (a) to (d) are schematic structural views of a large transport vehicle parallel transport system of the present invention
  • the transport vehicle parallel transport system of the present invention comprises: a transport unit composed of four large semi-trailers; a rollover system for use with the transport unit; wherein, when the transport unit is transported by the transport unit, the four large semi-trailers of the transport unit are respectively transported by cargo; wherein, the transport unit is empty During the transport, the two large semi-trailers in the transport unit are loaded onto the other two large semi-trailers by the rollover system to form a parallel transport mode for transporting two other large semi-trailers by two large semi-trailers.
  • the transport unit when the one transport unit is transported by air, the transport unit is divided into: a first transport vehicle 1 for loading a semi-trailer body, for loading a second transport vehicle 2 for the tractor head, and a third and fourth transport vehicle as the loaded objects; wherein the semi-trailer body 32 of the third transport vehicle is inverted on the semi-trailer body 12 of the first transport vehicle;
  • the semi-trailer body 42 of the four transport vehicles is stacked on the semi-trailer body 32 of the inverted third transport vehicle; the deck, the barn and the pillars of the four transport vehicles are placed in the semi-trailer compartment of the fourth transport vehicle. 42;
  • the tractor heads 31, 41 of the third and fourth transport vehicles are placed on the semi-trailer body 22 of the second transport vehicle, and the four transport vehicles form a group of transport units to reduce transportation costs.
  • the wheel 33 on the semi-trailer body 32 of the third transport vehicle is located at one end of the rear end of the first transport vehicle 1; the wheel 43 on the semi-trailer body 42 of the fourth transport vehicle is located at the tractor head of the first transport vehicle 1 One end of 11. As shown in Figures 1 (a) to (d).
  • the semi-trailer body 12 of the first transport vehicle 1 and the semi-trailer body 42 of the fourth transport vehicle are respectively provided with hooks 121 and 421 for connecting manual hoists (not shown), and three semi-trailer vehicles.
  • the bodies 12, 32, 42 are bundled together by hand hoists to prevent height displacement of the three semi-trailer bodies 12, 32, 42 during transport.
  • the four corners of the semi-trailer body 12 of the first transport vehicle 1 are provided with screw holes 120, and the four corners of the semi-trailer body 32 of the third transport vehicle are provided with screw holes 320, in the screw holes
  • the bolt 15 is screwed into the screw hole 320 and the screw hole 320, and as shown in FIG. 1(a), the semi-trailer body 12 of the first transport vehicle 1 and the semi-trailer body 32 of the third transport vehicle can be connected together, thereby The semi-trailer body 32 of the third transport vehicle is prevented from moving relative to the semi-trailer body 12 of the first transport vehicle 1 during operation.
  • the first and second transport vehicles 1, 2, the third transport vehicle 3, the fourth transport vehicle 4, the semi-trailer bodies 12, 22, 32, 42 and their columns are connected by plugging, and are fixed by bolts.
  • the pillar of the first transport vehicle 1 of the present invention includes a rear pillar 150, a side pillar 160, and a front pillar (shown in the drawing), wherein the structure of the front pillar and the semi-trailer body is connected with
  • the rear pillar 150 has the same structure as the semi-trailer body.
  • the bottom inner wall of the rear pillar 150 of the present invention is fixed with a plug 150a.
  • the insert 150a extends downwardly from the bottom end of the column 150, and the outer wall of the bottom of the column 150 respectively.
  • the connecting plates 150b, 150c are fixed, and the connecting plates 150b, 150c extend downwardly from the bottom end of the column 150, and are provided with screw holes.
  • the semi-trailer body 12 is provided with a groove 12b, and the rear wall of the semi-trailer body 12 And a corresponding position on the side wall is also provided with a screw hole, the insert block 150a on the rear pillar 150 is inserted into the recess 12b, and the screw hole on the rear pillar 150 and the screw hole on the rear wall and the side wall of the semi-trailer body Correspondingly, a bolt is screwed therein and the rear pillar 150 can be mounted on the semi-trailer body 12.
  • a rear compartment plate 151a and a plurality of rear compartments 151 are connected between the rear pillars 150, and the bottom of the rear compartment panel 151a is hinged to the semi-trailer body 12 by a hinge, and a pair of insertions are fixed on the inner and outer side walls of the bottom of the rear compartment 151.
  • the plates 152, 153, a pair of inserting plates 152, 153 project downwardly from the bottom of the rear fender 151, and a pair of inserting plates 152, 153 form a slot for inserting the top of the adjacent rear bar, as shown in Fig. 2a As shown in Fig.
  • a rear compartment 151 is stacked above the rear compartment 151a, and the top of the lower rear compartment 151a is inserted into the pair of inserts 152, 153 at the bottom of the upper rear compartment 151.
  • a quick connection between the rear compartment 151 and the rear compartment 151a can be achieved.
  • a plurality of rear bins 151 can be sequentially inserted until the height of the rear bin meets the usage requirements.
  • hooks 154 are respectively disposed on two sides of the bottommost rear panel 151a and the topmost rear compartment 151, and the hooks 154 are extended to both sides, and a hook wrench 155 is disposed at a corresponding position on the pair of rear pillars 150.
  • the hook wrench 155 is rotatable relative to the rear pillar, and the hook 154 is respectively corresponding to the hook wrench on the pair of uprights 150, and the hook wrench is rotated, so that the hook wrench is attached to the hook to connect the rear panel 151a and the topmost rear compartment.
  • Column 151 is integrated with the rear pillar as shown in FIG.
  • a pair of rear pillars 150 are provided with positioning plates 156 at positions corresponding to the joints of the adjacent tailgates.
  • the bottom inner wall of the side upright 160 of the present invention is fixed with a plug 160a
  • the insert 160a extends downwardly from the bottom end of the side upright
  • the semi-trailer body 12 is provided with a plug-in block.
  • the inserted groove 12a, the outer wall of the bottom of the side pillar 160 is fixed with a connecting plate 160b.
  • the connecting plate 160b extends downwardly from the bottom end of the column 160, and a screw hole is arranged thereon, and the corresponding position on the side wall of the semi-trailer body 12 is provided. Screw holes are also provided.
  • the insert block 160a is inserted into the recess 12a, and the screw hole of the connecting plate 160b corresponds to the screw hole on the side wall of the semi-trailer body, and the bolt is screwed therein and the side post 160 can be mounted on the semi-trailer body. 12 on.
  • a plurality of rows of hooks 162 and a plurality of rows of hook wrenches 163 are respectively disposed on the outer walls of each of the side pillars, and a plurality of rows of hooks 162 and a plurality of rows of hook wrenches 163 are distributed along the height direction, and the plurality of side pillars 160 are along the semi-trailer
  • the sides of the body 12 are distributed; between the adjacent side columns 160, there are a side panel 161a and a plurality of side compartments 161.
  • the bottom of the side panel 161a is hinged to the semi-trailer body 12 by a hinge, and hooks 165a are respectively fixed on two sides of the top side of the side panel 161a, and the hooks are corresponding to a row of hook wrenches 163 on the adjacent pair of side pillars, and the hooks are rotated.
  • the wrench causes the hook wrench to be hooked on the hook, so that the connection of the side panel 161a and the side pillar can be achieved.
  • a pin 164 is fixed to the top of the side edges of the side bar 161, and a hook 165 is fixed to the bottom.
  • the pin 164 is hung on a row of hooks 162 on the adjacent pair of side posts, and then the hook 165 is A row of hook wrenches 163 on the opposite side columns corresponds to the hook wrenches, so that the hook wrenches are hooked on the hooks 165, so that the side bar 161 and the opposite side pillars can be connected.
  • the side pillars, the front pillars and the rear pillars of the fourth transport vehicle are respectively divided into upper and lower parts, wherein the lower part is connected with the semi-trailer body 42 and the first and second transport vehicles 1, 2, and the third transport vehicle 3
  • the side uprights, front uprights, and rear uprights are connected in the same way as the semi-trailer body.
  • the lower part of the column is connected to the panel, and the upper part of the column is connected to the column.
  • the two parts are connected by means of plugging, and the side pillar 46 of the fourth transport vehicle will be described below as an example.
  • the side uprights 46 of the fourth transport vehicle are divided into upper and lower portions 46a, 46b, and the bottom of the lower portion 46b is connected to the semi-trailer body 42, which can be connected to the first and second transport vehicles 1 described above. 2.
  • the side pillars of the third transport vehicle are connected in the same way as the semi-trailer body.
  • the top portion of the lower portion 46b is fixed with a connecting plate 460 having a U-shaped cross section.
  • the connecting plate 460 and the lower portion 46b enclose a slot.
  • the top portion of the upper portion 46a is fixed with a plug block 461, and the insert block 461 extends downwardly from the upper portion 46a. At the bottom end, the upper and lower portions 46a, 46b can be quickly joined together by inserting the insert block 461 into the slot.
  • Figure 1 (c) is a top plan view of the semi-trailer body 32 of Figure 1 (a), and as shown in Figure 1 (c), the bottom of the semi-trailer body 32 of the third transport vehicle 3 is provided for positioning the fourth transport.
  • the positioning device of the semi-trailer body 42 of the vehicle the positioning device comprises two beams 32a and a plurality of longitudinal beams 32b, 32c, 32d, 32e connected thereto, and the plurality of longitudinal beams 32b, 32c, 32d, 32e are respectively
  • the beam 32a is outside the semi-trailer body 32 Side extension, wherein the longitudinal beams 32b, 32e have a right-angled triangle, and the longitudinal beams 32c, 32d have an isosceles triangle.
  • the connecting longitudinal beams are formed to place the fourth transport vehicle.
  • the space of the bottom wheel 43 of the semi-trailer body 42 of 4 is such that the wheel 43 at the bottom of the semi-trailer body 42 of the fourth transport vehicle 4 is just caught between the associated longitudinal beams, thereby preventing half of the fourth transport vehicle 4 during operation.
  • the trailer body 42 moves laterally and longitudinally.
  • FIG. 1(d) is a top plan view of the semi-trailer body 22 of FIG. 1(b), and as shown in FIG. 1(d), the semi-trailer body 22 of the second transport vehicle 2 is disposed for positioning the third transport.
  • Wheel positioning device for the traction head wheel of the vehicle 3 and the fourth transport vehicle 4 comprising a baffle 22a and a plurality of longitudinal members 22b, 22c, 22d, 22e, 22L, a plurality of longitudinal members 22b, 22c, 22d, 22e 22f extends perpendicularly to the longitudinal direction of the semi-trailer body 22, and is symmetrically arranged in the longitudinal direction and the width direction of the semi-trailer body 22, and the inside of the plurality of longitudinal beams 22b, 22c, 22d, 22e, 22f is fixed with a baffle 22a, a space is formed between the baffle 22a and the connecting longitudinal beam for arranging the bottom wheels of the tractor heads 31, 41 of the third and fourth transport vehicles, wherein the longitudinal beams
  • the longitudinal beam 22c has an isosceles triangle in cross section, so that the bottom wheels of the traction heads 31, 41 of the third and fourth transport vehicles are just caught between adjacent longitudinal beams, thereby preventing the traction heads of the third and fourth transport vehicles during operation. 31, 41 horizontal and vertical movement .
  • the side wall of the semi-trailer body 22 of the second transport vehicle 2 and the side walls of the tractor heads 31, 41 of the third and fourth transport vehicles are respectively provided with manual hoists (not shown). Hooking to tie the tractor heads 31, 41 of the third and fourth transport vehicles with the semi-trailer body 22 of the second transport vehicle 2 using a manual hoist to prevent traction of the third and fourth transport vehicles during operation
  • the front heads 31, 41 move in the height direction.
  • the first, third, and fourth transport vehicles are warehouse-type transport vehicles;
  • the second transport vehicle 2 is a warehouse-type transport vehicle, and since the warehouse-type transport vehicle body 22 belongs to the low-level vehicle body, It is ensured that the tractor heads 31, 41 loaded thereon do not exceed the heights specified by the transport standards.
  • the method for transporting a large transport vehicle in parallel will be described in detail below with reference to FIG. 1 and FIG. 7 to FIG. 13 including: A) combining four large semi-trailers into one transport unit; B) carrying goods in the one transport unit During transportation, the four large semi-trailers of the transport unit are respectively transported by cargo; C) when the one transport unit is transported in no-load, the two large semi-trailers in the transport unit are loaded to the other two by the rollover system.
  • a large semi-trailer is used to form a parallel transport mode for transporting two other large semi-trailers by two large semi-trailers.
  • the step C) comprises: first, dividing the four large semi-trailers of the one transport unit into a first transport vehicle 1 for loading a semi-trailer body, and a second transport vehicle for loading a tractor head 2 And the third and fourth transport vehicles as the loaded objects, and the pillars, the carriages and the warehouse rails on the semi-trailer body of the first, second and third transport vehicles are removed, and the semi-trailer of the fourth transport vehicle is removed.
  • the tractor head 31 of the third transport vehicle is separated from the semi-trailer body 32, and the semi-trailer body 32 of the third transport vehicle is turned 180 degrees by the rollover system 5, and then stacked on the first transport vehicle 1
  • the wheels 33 of the third transport vehicle are directed upward. Screws 15 are inserted into the screw holes 120, 320 of the semi-trailer body 12 and the semi-trailer body 32 to fix the semi-trailer body 32 and the semi-trailer body 12.
  • the tractor head 41 of the fourth transport vehicle is separated from the semi-trailer body 42 and the semi-trailer body 42 of the fourth transport vehicle is stacked on the semi-trailer body 32 of the inverted third transport vehicle, so that The wheel 43 of the four transport vehicle is just stuck between the adjacent longitudinal beams at the bottom of the semi-trailer body of the third transport vehicle, as shown in Figure 1 (a), and the above-mentioned removed columns, panels and bins are placed in In the semi-trailer compartment 42 of the fourth transport vehicle, since the compartment 42a is connected to the semi-trailer body 42 of the fourth transport vehicle, all the removed bins and the panel are placed on the semi-trailer body 42 and the deck 42a. In the enclosed space, it will not be scattered from the semi-trailer body 42.
  • the semi-trailer body 42 of the fourth transport vehicle is connected to the semi-trailer body 12 of the first transport vehicle 1 by means of a manual hoist.
  • tractor heads 31, 41 of the third and fourth transport vehicles are placed on the semi-trailer body 22 of the second transport vehicle, and the wheels at the bottom of the tractor heads 31, 41 of the third and fourth transport vehicles are made.
  • the tractor heads 31, 41 are respectively connected to the semi-trailer body 22 by manual hoists.
  • the rollover system 5 of the present invention comprises a lifting device, a turning platform (frame) that can be lifted and lowered by the lifting device, a driving device that drives the turning platform (frame) to rotate, a clamping device for clamping the vehicle body, and a control device for controlling the driving device station.
  • the lifting device is composed of a corresponding first lifting frame and a second lifting frame
  • the first lifting frame has a pair of lifting columns 51, 512 disposed at a predetermined distance
  • the second lifting frame has a pair of lifting columns 511, 513 disposed at a predetermined distance apart and a second connecting frame 515 connecting the pair of lifting columns.
  • the two ends of the flipping platform are respectively pivotally connected to the first lifting frame and the second lifting frame, and include two correspondingly disposed cross beams 52, first longitudinal beams 521 connected to the ends of the beam 52 and correspondingly arranged and parallel to each other, and Second longitudinal beam 522.
  • the first central shaft 57-end is fixed in the middle of the first longitudinal beam 521, and the other end is pivotally connected to the first central axle seat 58 of the first connecting frame 514; the second central shaft 571-end is fixed in the middle of the second longitudinal beam 522.
  • the other end is pivotally connected to the second center axle seat 581 of the second connecting bracket 515.
  • the driven gear 56 of the drive unit is disposed on the first center shaft 57 and is fixed to the middle of the first longitudinal beam 521.
  • the driving device is used for driving the turning platform (frame) to rotate, and includes a driving motor 55 fixed to the first connecting frame 513, a driving wheel 541 connected to the motor through the speed reducer 54, and a driven gear 56 driven by the driving wheel 541.
  • the clamping device is placed on the flip platform (frame) and is used to clamp the semi-trailer body.
  • the translating device comprises a translating plate 012, a translating plate 012 disposed on the ground, a pair of racks 011, a gear 013 disposed at the bottom of the translating plate 012 and disposed on the rack 011, the gear 013 can be rotated by the motor, and the translating plate 012 is passed The gear 013 rotated by the motor rolls on the rack 011, thereby moving the moving inverting device from the outside to the immediately below it.
  • the length of the flip platform (frame) (ie the length of the beam 2) must be greater than the length of the semi-trailer body 32, and the width of the flip platform (frame) must be greater than the width of the semi-trailer body 32 to facilitate the semi-trailer The body 32 is clamped and fixed.
  • the driven gear 56 is further provided with a limit block 561 for preventing the turning frame from rotating beyond a predetermined angle. Since the turning system needs to arrange the oil pipe around the turning platform (frame), the flipping platform (frame If the angle of overturning in one direction is too large, the tubing is broken, which affects the service life of the inverting system. Therefore, the limit block 561 can effectively prevent the flipping platform (frame) from over-reversing.
  • the inner diameter of the driven gear 56 is larger than the inner diameter of the driving gear 541; the driven gear 56 having a large inner diameter facilitates driving the entire frame, and the driven gear 56 is driven.
  • a rib 562 is fixed to the connection of the flipping platform (frame) to improve the tight connection of the driven gear 56 and the flipping platform (frame); and the service life of the turning system is improved.
  • the driving motor 55 drives the driving gear 541 to rotate by the speed reducer, and the driving gear 541 further drives the driven gear 56 integrated with the turning frame to rotate, thereby turning the flipping platform (frame).
  • the speed of the turning process can be controlled to be smooth without causing damage to the vehicle body.
  • the clamping device comprises: a plurality of clamping seats 53 disposed on the beam 52; a clamping arm 531 extending from the clamping seat 53 into the flipping platform (frame);
  • the clamping jaws 532 are connected to the clamping arms 531.
  • the clamping seat 53 is a hydraulic cylinder;
  • the clamping jaw 532 is a U-shaped jaw, and the hydraulic cylinder is provided with a tubing connection 533 connecting the hydraulic pipe.
  • the clamping device can also use a manual threaded clamping device to secure the fastening of the semi-trailer body 32 by means of a threaded fastening valve in conjunction with a threaded hole (not shown) on the flip platform (frame).
  • the hydraulic drive unit is disposed at the bottom of the lift unit and is coupled to the console 59.
  • a hydraulic lifting device may be respectively disposed at a lower portion of each lifting column to cause the lifting column to be lifted and lowered by hydraulic control.
  • the lifting column can also be lifted and lowered by means of gear lifting.
  • the third transport vehicle is first driven to the translating device such that the semi-trailer body 32 of the third transport vehicle is located on the translating plate 012 and the tractor head 31 is located outside the translating plate 012.
  • the tractor head 31 of the third transport vehicle is separated from its semi-trailer body 32, and the translation device is activated to move the semi-trailer body 32 directly below the flip platform (frame) (as shown in Fig. 8). Thereafter, the flipping platform (frame) is moved down with the lifting device, and the clamping device activates the clamping of the semi-trailer body 32.
  • the lifting device drives the flipping platform (frame) and the semi-trailer body 32 to move up, the driving device is activated, and the rotating platform (frame) and the semi-trailer body 32 fixed on the flipping platform (frame) are turned upside down (as shown in the figure). 10)), until the semi-trailer body 32 is turned 180 degrees (as shown in Figure 11), the drive stops working.
  • the inverted semi-trailer body 32 is suspended by a row crane, the clamping device is unloaded and loosened to clamp the semi-trailer body 32, and the semi-trailer body 32 is lifted and placed in the first transport vehicle.
  • the semi-trailer body 12 of 1 completes the turning and positioning of the semi-trailer body 32.

Abstract

La présente invention a trait à un système et à un procédé de transport à fonctionnement en parallèle de véhicule de transport de grande envergure. Le procédé de transport à fonctionnement en parallèle comprend les étapes consistant : à combiner quatre semi-remorques de grande envergure (1, 2, 3, 4) dans une unité de transport ; lorsque l'unité de transport effectue un transport de chargement de fret, à faire en sorte que les quatre semi-remorques de grande envergure (1, 2, 3, 4) de l'unité de transport effectuent le transport de chargement de fret respectivement ; et lorsque l'unité de transport effectue un transport de charge à vide, au moyen d'un système de roulement, à charger deux semi-remorques de grande envergure (3, 4) de l'unité de transport sur les deux semi-remorques de grande envergure (1, 2) restants de manière à former un moyen de transport à fonctionnement en parallèle consistant à ce que les deux semi-remorques de grande envergure (1, 2) transportent les deux semi-remorques de grande envergure (3, 4) restants. Au moyen du système et du procédé, à condition que l'unité de transport constituée par quatre semi-remorques ne soit pas ultra-haute, ultra-longue et ultra-large, l'unité de transport est en mesure d'effectuer un transport fiable conformément aux exigences du transport par voie routière et de réduire sensiblement les coûts de transport.
PCT/CN2012/083551 2012-08-02 2012-10-26 Système et procédé de transport à fonctionnement en parallèle de véhicule de transport de grande envergure WO2014019294A1 (fr)

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CN104029625B (zh) * 2014-06-17 2016-11-09 王国利 半挂车空载三车并一车运输系统及方法
CN104176081B (zh) * 2014-07-18 2017-09-08 北京航天发射技术研究所 一种轮式车辆铁路运输加固装置及方法
CN104925149A (zh) * 2015-07-01 2015-09-23 赵永胜 一种半挂列车两车组合式运输系统及方法
CN104973149A (zh) * 2015-07-23 2015-10-14 赵永胜 一种主车与牵引杆挂车两车组合式运输系统及方法
CN105216885A (zh) * 2015-10-04 2016-01-06 任品 半挂车的组合式运输系统及方法
CN106476817B (zh) * 2016-11-29 2018-11-13 浙江双友物流器械股份有限公司 一种用于铁路运输的半挂车固定装置
CN106939536B (zh) * 2017-02-27 2018-09-11 重庆巨能建设(集团)有限公司 一种煤矿斜井装配式铺轨施工方法
CN106864613A (zh) * 2017-03-06 2017-06-20 河北中瑞汽车制造有限公司 一种复合运输半挂车
CN107672506A (zh) * 2017-09-19 2018-02-09 中铁四局集团有限公司 一种内燃机车的汽车转运方法

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